Dangoya Mi A.k.a. Manmo Chimiya

Dangoya Mi a.k.a. Manmo Chimiya
Deeper exploration of the Reline Ah dimension (otherwise known as the Flower Buddy dimension) has revealed the existence of a misty land heated by geothermal heat on the border between it and the Fire Dimension. One plant that thrives here is the Dangoya Mi, or Manmo Chimiya. Its fruit, warmed by the ground, is piping hot and has a sticky consistency like that of a rice cake. When dried and fired, it can be drawn on, and residents of the land have been seen using them as decorations that way. As its taste is also similar to a sticky rice cake, it can be enjoyed as a savory item as well. The leaves that grow sheltering the fruit prove to be an artful decoration whether for use in serving or framing the dried fruit.
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More Posts from Kazeharuhime

Amanomi Noyabu
In addition to the Air Sea, a type of rain forest was also discovered deep down in the Storm Dimension's cloud layer. The primary specimen we'll be observing is the Amanomi Noyabu, otherwise known as the Wild Rainberry Bush. The berries in question are only faintly sweet and dye the mouth dark blue when eaten, leading to it also being named the Inkberry Rainbush, or Suminomi Amayabu. Its ink-like qualities may mean Inkpetal Dyenas will soon have a rival on the market for ink and dyeing products.

Bubblia (& Perloa)
Directly adjoining the Storm Dimension from beneath, there appears to be a previously unknown area of air sea. The air is so thick here it acts similar to a low-density ocean.
The first species to be recorded in this new area is the Bubblia. It would appear that the plant's smaller bubbles move about the surface of its larger one.
In some specimens, these bubbles followed a strict ring pattern, gliding about the surface of the nucleus bubble as a whole with the angle of this movement changing at random intervals. Whether the bubbles move clockwise or counter-clockwise seems to be connected to the water-air currents, switching when there's a shift in the current.
In other, larger specimens, these satellite bubbles were observed to each have their own path, which like the previously documented specimens, only switched their clockwise/counter-clockwise direction when the air-water currents shifted.
The the first type of specimens have been dubbled Ringia Bubblias. These were observed to have smaller central bubbles than the larger specimens with freer satellites.
Whether Ringia Bubblias are their own separate species or merely a juvenile version of the larger specimen type is still a topic of much debate, as there has yet to be observed any juveniles behaving like the larger specimen type.
On the one hand, there has been no noticeable change in behavior pattern of the known Ringia Bubblia specimens since their initial discovery. This does not discredit the notion of a maturation event still being on the horizon for any one of them, nor does it negate the possibility that the larger specimens are genetically nonviable offshoots of the Ringia Bubblia species, as it has yet to be observed how these larger specimens reproduce.
On the other, there are many indicators that Ringia Bubblias are the descendants of the larger specimens and not the other way around. For one thing, the larger specimens show evidence of being much older than the Ringias. The large specimens often have a somewhat central position in their patch, and tend to only exist in the singular per patch. This would give credence to the idea that the Ringias are desendants.
However, it still does not explain the behavioral differences and the fact that no Ringia has been observed maturing into the larger specimen type.
One hypothesis states that the larger specimen type acts as a sort of a queen or ruler over the smaller Ringias. This would explain why there can only be one large specimen type per patch.
It is also hypothesized that each satellite bubble on the larger specimen type corresponds to the movement of a ring somewhere in the patch, but this has yet to be sufficiently backed up with evidence.
Other than these two primary specimens, there has been another feature observed in Bubblia patches, and that is the presence of one of a third type of specimen, the Perloa, in every patch.
Unlike the first two, Perloas do not appear to be too closely related to either specimen type. They grow an opaquer, solider sphere in lieu of bubble nucleus and appear to maintain petal-like bracts even after fruiting. No external flowers were observed in either of the two Bubblia specimen types, and the primary bubble in each one seemed to form almost in place of sepals just below the base of flowers. Bubblias are thought to be related to Aquabulla genus by various points of evidence, and it is currently hypothesized that Perloas may be a hybird of the Perloa Alnia and Yura Aquabulla based on its appearance. However, this is at best speculation, and it is not yet clear if there really is a direct connection between the two species, or if they merely bear a resemblance to both and have a more indirect connection to the Aquabullas, much less the Perloa Alnias.
The fruit of the Perloa is not thought to be edible, but from their shiny appearance, it is thought they could become a collector's item in the future. This difference in taste is sometimes brought up as an argument against their being closely related to the Perloa Alnia, despite them both sharing the word "Perloa" in their name.

Hariana Kanmia
The Hariana Kanmia is said to be the origin of all the other Hariana species, including Hariana Stratasa (featured here around the Hariana Kanmia). There is only one known Kanmia, and similar to how the Magna Subariana is thought to be the heart of the Great Buddy Lake, the Kanmia is thought to be the heart of all other Harianas, and if something were to befall it, calamity would befall the entire genus. This is of course speculation, but it keeps the lone specimen protected from careless Kitonyas, Neonyas, and children nonetheless.
The Hariana Kanmia can be found only in Fuline Ah, deep in the continent in a field of other Hariana species, such as plain Harianas, Stratasas and Blosomas.

Lara Münara
A relative of the Münlala Spikalif and Orbitania, the Lara Münara boasts of larger flowers than the latter and more Lar-like fruit than the former. The taste of its stem is distinctly plant-like, though it tastes slightly like that of an Omu-omu Plantai as well. The flowers make wonderful decorations, but are generally not used for more than decoration or garnish in when it comes to eating. They don't taste bad, but they don't have much a taste to speak of either.
The fruit is similar to that of the Münlala Spikalif and the Orbitania, but with less of a downy layer to it and a little more of a glass-like crunch to it. If it grew any closer to the mainland, it's possible the fruit would display more transparency as well.

Faeriepetal Glimmerina (& Faerin Glowamina) (& Faehanae Wingrass)
Halfway between Crescent Minoria and Furheart Iiah exists a small island where delicate, faerie-like plants bloom.
Faeriepetal Glimmerinas also exist on continental Crescent Minoria, but they are all but clear with the faintest amount of color. On Fe'ari Island, their appearances is much more like that of a Flyona, but lacking the Flyona family's classic taste in both stem and petal. Their taste remains like that of those on the Crescent Minoria mainland—like glass. However, when the entire plant is boiled down along with the roots, it is used to create a powerful tea, as the mainland variety especially absorbs lunar energy which can only be accessed in edible form by melting and reducing the plant down. Though previously untested, it may be possible that Fe'ari Island Glimmerinas store the potential energy to give the drinker of tea made from it faerie wings.
The Faerin Glowamina is a type of Varia Maria. Whether on the mainland or Fe'ari Island, it tends to grow near Faeriepetal Glimmerinas.
Faehanae Wingrass, like the other two, can sometimes be found on the Crescent Minoria mainland, usually near the coasts. Attempts were previously made to cultivate it on Wing Alayna, but it would seem it prefers its native regions more.